Puelles Victor G, Combes Alexander N, Bertram John F
III. Department of Medicine, University Medical Center Hamburg-Eppendorf, Hamburg, Germany; Department of Anatomy and Developmental Biology, and Stem Cells and Development Program, Monash Biomedicine Discovery Institute, Monash University, Melbourne, Australia.
Department of Anatomy and Developmental Biology, and Stem Cells and Development Program, Monash Biomedicine Discovery Institute, Monash University, Melbourne, Australia.
Kidney Int. 2021 Oct;100(4):780-786. doi: 10.1016/j.kint.2021.04.042. Epub 2021 Jun 2.
For decades, measurements of kidney microanatomy using 2-dimensional sections has provided us with a detailed knowledge of kidney morphology under physiological and pathological conditions. However, the rapid development of tissue clearing methods in recent years, in combination with the development of novel 3-dimensional imaging modalities have provided new insights into kidney structure and function. This review article describes a range of novel insights into kidney development and disease obtained recently using these new methodological approaches. For example, in the developing kidney these approaches have provided new understandings of ureteric branching morphogenesis, nephron progenitor cell proliferation and commitment, interactions between ureteric tip cells and nephron progenitor cells, and the establishment of nephron segmentation. In whole adult mouse kidneys, tissue clearing combined with light sheet microscopy can image and quantify the total number of glomeruli, a major breakthrough in the field. Similar approaches have provided new insights into the structure of the renal vasculature and innervation, tubulointerstitial remodeling, podocyte loss and hypertrophy, cyst formation, the evolution of cellular crescents, and the structure of the glomerular filtration barrier. Many more advances in the understanding of kidney biology and pathology can be expected as additional clearing and imaging techniques are developed and adopted by more investigators.
几十年来,利用二维切片对肾脏微观解剖结构进行测量,使我们对生理和病理条件下的肾脏形态有了详细的了解。然而,近年来组织透明化方法的迅速发展,结合新型三维成像技术的发展,为肾脏结构和功能提供了新的见解。这篇综述文章描述了最近使用这些新方法获得的一系列关于肾脏发育和疾病的新见解。例如,在发育中的肾脏中,这些方法为输尿管分支形态发生、肾单位祖细胞增殖与分化、输尿管尖端细胞与肾单位祖细胞之间的相互作用以及肾单位节段的形成提供了新的认识。在成年小鼠的整个肾脏中,组织透明化结合光片显微镜可以对肾小球的总数进行成像和量化,这是该领域的一项重大突破。类似的方法为肾血管系统和神经支配的结构、肾小管间质重塑、足细胞丢失和肥大、囊肿形成、细胞新月体的演变以及肾小球滤过屏障的结构提供了新的见解。随着更多的研究人员开发和采用额外的透明化和成像技术,预计在肾脏生物学和病理学的理解方面还会有更多进展。